Thank you for an excellent explanation, but I think the comparison of surface energy is not true. Because I found it in "nanostructures & Nanomaterials, synthesis, Properties & Application, Guozhong Cao" book that explains it like this: surface energy(100)>surface energy(110)>surface energy(111). You can find it on pages 18 to 19 in this book.
Thank you for this informative video. Do you have any link that has a list of the surface energy of different metals? or make a video about that Thank you
I cover only cubic structures in my course. However, the principles would be the same: use the difference between the bull coordination number and the surface coordination number.
Thank you for an excellent explanation, but I think the comparison of surface energy is not true. Because I found it in "nanostructures & Nanomaterials, synthesis, Properties & Application, Guozhong Cao" book that explains it like this: surface energy(100)>surface energy(110)>surface energy(111).
You can find it on pages 18 to 19 in this book.
Yes same here
good explanation thank you
thank you so much.
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Thank you for this informative video. Do you have any link that has a list of the surface energy of different metals? or make a video about that
Thank you
Thank you very much. can you please provide us the title of the book from which you got these explanations
感謝教學,很有幫助!
Glad to help!
Thank you it help me to understand
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Thank you, it was very helpful.
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Sir i can't understand it . Bcz it is very complex figure to understand what I have seen a simple fcc.
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Thank you for the lesson. By the way, I have one question. The N_A represent for what?
It's Avogadro's number.
Thanks, what is about hexagonal ?
I cover only cubic structures in my course. However, the principles would be the same: use the difference between the bull coordination number and the surface coordination number.
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شكرا اتمنى كتابة الترجمه بالعربية
You are very welcome!